Technical Reference
Manual-XPM3m Revision Date: August 2014
INDIVIDUAL CELL SENSING
-C
ELL OVER TEMPERATURE SWITCHES
Preliminary Testing
Verify continuity of the heater over temperature switch circuit from wire number 2400 on zone 1 top to the coil of K4
on the back panel.
Verify that the harness wiring is correct on connector P3 (E1479508 8 position connector) of each E3152701 cell
interface board by unplugging the heater over temperature switch connector P1 (E1479502 2 position connector)
on each cell interface board.
The red led on each cell interface board will light when the heater over temperature switch connector is unplugged
to the board. If the red led fails to light and continuity is OK in the heater over temperature switch circuit then the
wires are reversed in position 1 and 2 of connector P3.
Alarm Testing
Disconnect the following heater over temperature switches one at time by unplugging connector P1 (E1479502 2
position connector) on the corresponding E3152701 cell interface board.
Verify that each alarm message is displayed on the PC and that the alarm message text corresponds to the cell
location that has the alarm. It takes up to 68 seconds for an alarm condition to be detected and reported on the PC.
Verify that an IAS alert alarm message is present, which indicates that K4 on the back panel is shutting off when a
heater over temperature switch is opened.
This test verifies that each E3152202 board is configured correctly and is also communicating correctly with the DI
board and that relay K4 on the back panel shuts off when a heater over temperature switch is opened.
E3152202
Board#
Model 520
Model 730/820 Model
940/1030
Model 1240
Master
Zone 1 Top
Zone 1 Top
Zone 1 Top
Zone 1 Top
Board 2
Zone 1 Bottom Zone 1 Bottom Zone 1 Bottom Zone 1 Bottom
Board 3
Zone 7 Top
Zone 9 Top
Zone 12 Top
Board 4
Zone 7 Bottom Zone 9 Bottom Zone 12
Bottom
E3152202 Assembly 16 Channel Input Board Theory of Operation
The Atmel Atmega8 micro-controller is the main component on the board. The Atmega8 has one built in UART. The
UART is used to communicate to an RS485 connection on a multi-drop network through MODBUS protocol.
The RS485 port is not used directly with the existing controller since the existing controller does not have additional
serial ports available. Instead a frequency generator output from the micro-controller is used on the controller that is
set as the Master through switch 4 of dip switch S1 to communicate digital input status data to the existing controller
through using a counter input on the existing controller. The frequency generator output is derived by using the
timer/counter compare output of timer 1 of the Atmega8 micro-controller.
Содержание XPM3m
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Страница 90: ...Technical Reference Manual XPM3m Revision Date August 2014 ENHANCED COOLING PACKAGE EC 1 FLOW DIAGRAM ...
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